首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >High-Resolution 3-D Shear Wave Velocity Model of Northern Taiwan via Bayesian Joint Inversion of Rayleigh Wave Ellipticity and Phase Velocity With Formosa Array
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High-Resolution 3-D Shear Wave Velocity Model of Northern Taiwan via Bayesian Joint Inversion of Rayleigh Wave Ellipticity and Phase Velocity With Formosa Array

机译:台湾北部高分辨率3-D剪裁波速模型,通过摩尔德波椭圆形和甲型阵列的阶段速度的贝叶斯联合反演

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摘要

The Formosa array, with 137 broadband seismometers and similar to 5 km station spacing, was deployed recently in Northern Taiwan. Here by using eight months of continuous ambient noise records, we construct the first high-resolution three-dimensional (3-D) shear wave velocity model of the crust in the area. We first calculate multi-component cross-correlations to extract robust Rayleigh wave signals. We then determine phase velocity maps between 3 and 10 s periods using Eikonal tomography and measure Rayleigh wave ellipticity at each station location between 2 and 13 s periods. For each location, we jointly invert the two types of Rayleigh wave measurements with a Bayesian-based inversion method for a one-dimensional shear wave velocity model. All piecewise continuous one-dimensional models are then used to construct the final 3-D model. Our 3-D model reveals upper crustal structures that correlate well with surface geological features. Near the surface, the model delineates the low-velocity Taipei and Ilan Basins from the adjacent fast-velocity mountainous areas, with basin geometries consistent with the results of previous geophysical exploration and geological studies. At a greater depth, low velocity anomalies are observed associated with the Linkou Tableland, Tatun Volcano Group, and a possible dyke intrusion beneath the Southern Ilan Basin. The model also provides new geometrical constraints on the major active fault systems in the area, which are important to understand the basin formation, orogeny dynamics, and regional seismic hazard. The new 3-D shear wave velocity model allows a comprehensive investigation of shallow geologic structures in the Northern Taiwan.
机译:台塑阵列最近在台湾北部部署,拥有137台宽带地震仪,与5公里的台站间距相似。在这里,我们利用八个月的连续环境噪声记录,建立了该地区地壳的第一个高分辨率三维(3-D)剪切波速模型。我们首先计算多分量互相关来提取稳健的瑞利波信号。然后,我们使用Eikonal层析成像确定3到10秒周期之间的相速度图,并在2到13秒周期之间测量每个站点位置的瑞利波椭圆度。对于每个位置,我们使用基于贝叶斯的一维剪切波速模型反演方法联合反演两种类型的瑞利波测量值。然后使用所有分段连续的一维模型构建最终的三维模型。我们的三维模型揭示了与地表地质特征密切相关的上地壳结构。在地表附近,该模型描绘了邻近高速山区的低速台北和宜兰盆地,盆地几何形状与之前的地球物理勘探和地质研究结果一致。在更大的深度,观察到与林口台地、大屯火山群和宜兰盆地南部可能的堤坝侵入有关的低速异常。该模型还为该地区的主要活动断裂系统提供了新的几何约束,这对于理解盆地形成、造山动力学和区域地震灾害非常重要。新的三维横波速度模型允许对台湾北部的浅层地质结构进行全面调查。

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